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Ecological patterns diversity and core taxa of microbial communities in groundwater-fed rapid gravity filters

机译:地下水快速重力过滤器中微生物群落的生态模式多样性和核心分类

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摘要

Here, we document microbial communities in rapid gravity filtration units, specifically serial rapid sand filters (RSFs), termed prefilters (PFs) and after- filters (AFs), fed with anoxic groundwaters low in organic carbon to prepare potable waters. A comprehensive 16S rRNA-based amplicon sequencing survey revealed a core RSF microbiome comprising few bacterial taxa (29–30 genera) dominated by Nitrospirae, Proteobacteria and Acidobacteria, with a strikingly high abundance (75–87±18%) across five examined waterworks in Denmark. Lineages within the Nitrospira genus consistently comprised the second most and most abundant fraction in PFs (27±23%) and AFs (45.2±23%), respectively, and were far more abundant than typical proteobacterial ammonium-oxidizing bacteria, suggesting a physiology beyond nitrite oxidation for Nitrospira. Within the core taxa, sequences closely related to types with ability to oxidize ammonium, nitrite, iron, manganese and methane as primary growth substrate were identified and dominated in both PFs (73.6±6%) and AFs (61.4±21%), suggesting their functional importance. Surprisingly, operational taxonomic unit richness correlated strongly and positively with sampling location in the drinking water treatment plant (from PFs to AFs), and a weaker negative correlation held for evenness. Significant spatial heterogeneity in microbial community composition was detected in both PFs and AFs, and was higher in the AFs. This is the first comprehensive documentation of microbial community diversity in RSFs treating oligotrophic groundwaters. We have identified patterns of local spatial heterogeneity and dispersal, documented surprising energy–diversity relationships, observed a large and diverse Nitrospira fraction and established a core RSF microbiome.
机译:在这里,我们记录了快速重力过滤装置中的微生物群落,特别是连续快速砂滤器(RSF),分别称为前过滤器(PFs)和后过滤器(AFs),它们用有机碳含量低的缺氧地下水喂养以制备饮用水。一项全面的基于16S rRNA的扩增子测序调查显示,核心RSF微生物组几乎没有细菌菌群(29–30属),主要由硝化螺旋菌,变形杆菌和酸性杆菌控制,在五个受检水厂中的丰度极高(75–87±18%)丹麦。硝化螺旋藻属中的谱系始终分别是PFs(27±23%)和AFs(45.2±23%)中第二大和最丰富的部分,并且比典型的变形细菌性铵氧化细菌丰富得多,这表明其生物学亚硝酸盐氧化的硝化螺菌。在核心类群中,鉴定出与能够氧化铵,亚硝酸盐,铁,锰和甲烷作为主要生长底物的类型密切相关的序列,并且在PF(73.6±6%)和AF(61.4±21%)中均占主导地位,这表明它们的功能重要性。出人意料的是,业务分类单位的丰富度与饮用水处理厂中的采样位置(从PFs到AFs)呈正相关,而对均匀性的负相关性较弱。在PFs和AFs中均检测到微生物群落组成的显着空间异质性,在AFs中更高。这是处理贫营养地下水的RSF中微生物群落多样性的第一本综合文献。我们已经确定了局部空间异质性和分散性的模式,记录了令人惊讶的能量-多样性关系,观察到了大量多样的硝化螺菌,并建立了一个核心的RSF微生物组。

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